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Titlebook: Ultra Low Power ECG Processing System for IoT Devices; Temesghen Tekeste Habte,Hani Saleh,Mohammed Ismail Book 2019 Springer International

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1872-082X for ECG processing.Features ultra-low power circuit design t.​This book describes an ECG processing architecture that guides biomedical SoC developers, from theory to implementation and testing. The authors provide complete coverage of the digital circuit implementation of an ultra-low power biomedi
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Combined CLT and DWT-Based ECG Feature Extractor, complex, P-wave, and T-wave, that provide important diagnostic information about cardiovascular diseases. The ECG feature extraction is based on combined techniques of CLT and DWT. A pipelined architecture for implementing CLT is proposed. The system was fabricated using GF-65 nm technology and con
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ACLT-Based QRS Detection and ECG Compression Architecture, are crucial for IoT devices. Moreover, optimized ECG processing architectures with an adequate level of accuracy is a necessity for IoT medical wearable devices. This chapter presents a real-time QRS detector and ECG compression architecture for energy constrained IoT healthcare wearable devices. T
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Book 2019vide complete coverage of the digital circuit implementation of an ultra-low power biomedical SoC,  comprised of a detailed description of an ECG processor implemented and fabricated on chip.  Coverage also includes the challenges and tradeoffs of designing ECG processors..Describes digital circuit
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978-3-030-07285-8Springer International Publishing AG, part of Springer Nature 2019
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